Ultrashallow depth imaging of a channel stratigraphy with first-arrival traveltime inversion and prestack depth migration: A case history from Bull Creek, Oklahoma

Author:

Fesseha Woldearegay Ammanuel1234,Jaiswal Priyank1234,Simms Alexander R.1234,Alexander Hanna1234,Bement Leland C.1234,Carter Brian J.1234

Affiliation:

1. Oklahoma State University, Boone Pickens School of Geology, Stillwater, Oklahoma, USA..

2. University of California at Santa Barbara, Department of Earth Science, Santa Barbara, California, USA..

3. University of Oklahoma, Oklahoma Archeological Survey, Norman, Oklahoma, USA..

4. Oklahoma State University, Department of Plant and Soil Sciences, Stillwater, Oklahoma, USA..

Abstract

Depth imaging in ultrashallow ([Formula: see text]) environments presents twofold challenge: (1) coda available for depth migration is very limited; and (2) conventional time processing with limited coda generally fails to estimate reliable velocity models for depth migration. We studied the combining of first-arrival traveltime inversion and prestack depth migration (PSDM) for depth imaging of ultrashallow paleochannel stratigraphy associated with the Bull Creek drainage system, Oklahoma. Restricted by a limited number of geophones (24) we acquired data for inversion and migration through two coincident profiles. The first profile for inversion has a wider survey-aperture (115-m maximum shot-receiver spacing) and consequently sparse CMP spacing (2.5 m), whereas the second profile for PSDM has denser CMP spacing (1 m) and consequently a narrower survey aperture (46-m maximum shot-receiver spacing). We also found that the velocity model from traveltime inversion of the wider-aperture data set is more preferable for depth-migration than the velocity model from time processing of the denser data set. The preferred depth image showed three episodes of incision whose chronological order is resolved through radio-carbon dating of terrace sediments. Results suggested that even with limited geophones, depth imaging of ultrashallow targets can be achieved by combining first-arrival traveltime inversion and PSDM through coincident wide- and narrow-aperture acquisitions.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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